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首页> 外文期刊>The Journal of biological chemistry >Proximity-dependent biotinylation detects associations between SARS coronavirus nonstructural protein 1 and stress granule–associated proteins
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Proximity-dependent biotinylation detects associations between SARS coronavirus nonstructural protein 1 and stress granule–associated proteins

机译:依赖于依赖性生物素化检测SARS冠状病毒非结构蛋白1和应激颗粒相关蛋白之间的关联

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The nonstructural protein 1 (nsp1) of severe acute respiratory syndrome coronavirus and severe acute respiratory syndrome coronavirus 2 is a critical viral protein that suppresses host gene expression by blocking the assembly of the ribosome on host mRNAs. To understand the mechanism of inhibition of host gene expression, we sought to identify cellular proteins that interact with nsp1. Using proximity-dependent biotinylation followed by proteomic analyses of biotinylated proteins, here we captured multiple dynamic interactions of nsp1 with host cell proteins. In addition to ribosomal proteins, we identified several pre-mRNA processing proteins that interact with nsp1, including splicing factors and transcription termination proteins, as well as exosome, and stress granule (SG)–associated proteins. We found that the interactions with transcription termination factors are primarily governed by the C-terminal region of nsp1 and are disrupted by the mutation of amino acids K164 and H165 that are essential for its host shutoff function. We further show that nsp1 interacts with Ras GTPase-activating protein SH3 domain–binding protein 1 (G3BP1) and colocalizes with G3BP1 in SGs under sodium arsenite–induced stress. Finally, we observe that the presence of nsp1 disrupts the maturation of SGs over a long period. Isolation of SG core at different times shows a gradual loss of G3BP1 in the presence of nsp1.
机译:严重急性呼吸综合征冠状病毒和重度急性呼吸综合征冠状病毒2的非结构蛋白1(NSP1)是临界病毒蛋白,其通过阻断核糖体在宿主MRNA上的组装来抑制宿主基因表达。为了了解宿主基因表达的抑制机制,我们寻求鉴定与NSP1相互作用的细胞蛋白质。使用邻近依赖性生物素化,然后进行生物素化蛋白的蛋白质组学分析,这里我们捕获了NSP1与宿主细胞蛋白的多种动态相互作用。除核糖体蛋白外,我们还鉴定了几种与NSP1相互作用的若干前mRNA加工蛋白,包括剪接因子和转录终止蛋白,以及外泌体和应激颗粒(SG) - 分配的蛋白质。我们发现与转录终止因子的相互作用主要由NSP1的C末端区域治理,并且由氨基酸K164和H165的突变被突破,这对于其宿主关闭功能是必不可少的。进一步表明,NSP1与RAS GTP酶活化蛋白SH3结构域结合蛋白1(G3BP1)相互作用,并在砷酸钠诱导的应力下用SGS中的G3BP1结合。最后,我们观察到NSP1的存在在长期内破坏了SG的成熟。在不同时间分离SG核心显示在NSP1存在下G3BP1的逐渐丧失。

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